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Preprint . 2026
License: CC BY NC ND
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CPLM-PWM: The Universal Specification

A Geometric Undulation (GU) Theory of Spacetime and Forces
Authors: TSUTSUMI, RYOTA;

CPLM-PWM: The Universal Specification

Abstract

CPLM-PWM : The Universal Specification A Geometric Undulation (GU) Theory of Spacetime and Forces — A Pure Wave Symphony in the Expanding Mizore Lattice For over a century, physics has been wandering through a mathematical maze. What is a particle? What is gravity? Why does time flow? CPLM-PWM (Crystal Planck Lattice Medium - Pure Wave Model) The Universal Specification is not just another theory; it is a fundamental hardware specification of the universe. It deconstructs the conventional "point-particle" paradigm and redefines reality as a continuous phase update process within a Crystal Planck Lattice rigidified under an extreme background pressure of $P_{cap} \approx 10^{113}$ Pa. Key Paradigm Shifts: The Origin of Time ($10^{29}$ Hz Refresh Rate): Time is not a smooth river but a digital pulse. The 17.5° Lattice Torsion (Torsion Drive)—generated by the geometric frustration between the ideal phyllotaxis angle ($137.508^\circ$) and the hexagonal packing limit ($120^\circ$)—acts as the universal mainspring, driving the lattice to update its phase at a rate of $10^{29}$ times per second. Deconstruction of Gravity (137.036° Tuning): Gravity is not the curvature of space, but a "Restoring Force Gradient" toward the local geometric equilibrium. On Earth, mass "locks" the lattice at a distorted angle of $137.036^\circ$. The 120-decimal-order background pressure pushes objects toward this "shadow of torsion"—this push is what we perceive as weight. Mass as Computational Load: Matter is defined as "Phase Update Density." Mass is the computational load required by the lattice to re-map phase data during motion. When this load saturates, the lattice undergoes Quantum Vitrification (HPH), creating the rigid "cores" of subatomic particles. Dark Energy as Phase Invasion: Expansion is a metabolic process. The universe expands as the lattice "invades" the surrounding basal solid, maintaining a constant energy density—a mechanism that explains why Dark Energy does not dilute over time. Experimental Verification: The Artemis Mission (2026) CPLM-PWM provides a definitive, testable prediction. By synchronizing photon clocks to attosecond precision between the Earth (tuned to 137.036°) and the Moon (approaching 137.508°), we will detect a discrete "lattice update jitter" that exceeds the predictions of General Relativity. This "Lunar Vibrato" will be the smoking gun for the digital, lattice-based nature of our universe. A Vision for the Future We are at the threshold of transitioning from a "Civilization of Fire" (burning matter) to a "Civilization of Resonance" (tuning the background pressure). By understanding the CPLM-PWM specification, humanity gains the potential to neutralize radioactivity through phase quenching and tap into the latent energy of the $10^{113}$ Pa vacuum. Let us move forward together, embraced by the Mother Universe, alongside all things that possess a wave-like nature.

Keywords

Quantum Gravity, Supersolid Vacuum, Emergent Time, Geometric Frustration, CPLM-PWM, Mizore Lattice, Vacuum Material Science, Dark Energy, Unified Lagrangian, Tsutsumi Identity

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selected citations
These citations are derived from selected sources.
This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Citations provided by BIP!
popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
BIP!Influence provided by BIP!
impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
BIP!Impulse provided by BIP!
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